6.1 State TWO categories of amplifiers - NSC Electrical Technology Electronics - Question 6 - 2022 - Paper 1
Question 6
6.1 State TWO categories of amplifiers.
6.2 Refer to FIGURE 6.2 and answer the questions that follow.
6.2.1 Determine the maximum voltage across the collector ter... show full transcript
Worked Solution & Example Answer:6.1 State TWO categories of amplifiers - NSC Electrical Technology Electronics - Question 6 - 2022 - Paper 1
Step 1
State TWO categories of amplifiers
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Answer
Two categories of amplifiers are:
Small signal amplifiers (e.g., audio amplifiers)
Power amplifiers (e.g., large signal amplifiers).
Step 2
Determine the maximum voltage across the collector terminal of the transistor
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Answer
The maximum voltage across the collector terminal can be determined from the characteristic curve in FIGURE 6.2, which shows that the maximum collector voltage is 20 V.
Step 3
Calculate the maximum collector current in FIGURE 6.2
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Answer
Using the formula:
IC=RCVCE
Substituting the maximum collector voltage (20 V) into the equation, we have:
IC=RC20
Assuming a resistance value of 3.33kΩ, we find:
IC=3.33×10320=6mA
Step 4
Draw the load line for the characteristics in FIGURE 6.2 on ANSWER SHEET 6.2.3
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The load line can be drawn by intersecting the maximum collector current with the maximum voltage, indicating the operational point where the amplifier functions optimally.
Step 5
Indicate this point on the load line on ANSWER SHEET 6.2.3
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The Q-point (quiescent point) should be marked at the intersection of the load line with the characteristic curves where the amplifier stabilizes.
Step 6
Determine the value of the collector current as the class A bias point
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As the bias point in Class A operation is typically set at the middle of the load line, the collector current can be determined as approximately 3 mA.
Step 7
State the function of Rs and Rb
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Rs and Rb function as voltage dividers that set the base bias voltage for transistor Q1, ensuring it operates in the active region.
Step 8
Explain why the values of the coupling capacitors are purposely selected to be as large as possible
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The coupling capacitors are selected to be large to allow a wide frequency response and to block DC voltage while allowing AC signals to pass between stages of amplification.
Step 9
State the purpose of Re
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Re is used to provide stability to the transistor biasing by negating variations in collector current, thus stabilizing the operating point.
Step 10
Describe the RC coupling
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RC coupling enables each amplifier stage to maintain its own DC operating point independently while allowing AC signals to pass through without interference from neighboring stages.
Step 11
State ONE application of the transformer-coupled amplifier
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An application of the transformer-coupled amplifier is in audio amplification systems, where impedance matching is necessary.
Step 12
State TWO advantages of the circuit in FIGURE 6.4
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Transformer normalization allows for better impedance matching.
It prevents DC feedback between stages, enhancing stability.
Step 13
Name TWO devices, apart from the speaker, that can be connected across the terminals of transformer T2
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AC motor
Relay.
Step 14
State ONE purpose of Ce
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Ce is used to shunt the AC signal to ground, thereby preventing any high-frequency signals from affecting the amplifier's operation.
Step 15
Describe the functions of the radio-frequency amplifier
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The radio-frequency amplifier selects and amplifies radio signals while providing necessary gain and ensuring minimal distortion.
Step 16
Explain why variable pre-set capacitors C1 and C2 have been used with transformer T2
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Variable pre-set capacitors allow for tuning of the amplifier's frequency response to match the desired operational frequency.
Step 17
Describe what would occur when switch S is moved to position 2
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When switch S is moved to position 2, the capacitor C will discharge, creating damped oscillations that decay over time.
Step 18
Draw the voltage waveform across the capacitor on the ANSWER SHEET OF QUESTION 6.6.2 after the switch is moved to position 2
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The voltage waveform will initially spike and then decay exponentially, resembling a damped oscillation.
Step 19
State how the frequency of this tank circuit can be increased
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The frequency can be increased by decreasing the values of the inductor L or the capacitor C in the tank circuit.
Step 20
State ONE application of the Hartley oscillator
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The Hartley oscillator is commonly used in radio frequency applications to generate stable sine wave signals.
Step 21
State the function of C1 and C2
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C1 and C2 serve to couple signals between the oscillator circuit and the tank circuit as well as block DC voltage.
Step 22
Describe how the state of oscillation can be maintained
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The state of oscillation is maintained through positive feedback from the collector of the transistor back to the tank circuit.
Step 23
State ONE function of transistor Q1
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Transistor Q1 serves to provide a 180-degree phase shift necessary for oscillation in the circuit.
Step 24
Describe how the frequency of the oscillator in FIGURE 6.8 can be adjusted if the value of the resistors are kept the same
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Frequency can be adjusted by changing the capacitance values of the components C1, C2, or other capacitors in the circuit.
Step 25
Compare the feedback used in transistor amplifiers to oscillator circuits
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Transistor amplifiers typically use negative feedback to stabilize gain, while oscillator circuits use positive feedback to sustain oscillations.
Step 26
State the difference between LC and RC oscillators with reference to frequency
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LC oscillators generate high-frequency signals, while RC oscillators are used to generate lower frequency signals due to their reliance on capacitive reactance.